Kathmann M, Schlicker E, Marr I, Werthwein S, Stark H, Schunack W
Institut für Pharmakologie und Toxikologie, Rheinische Friedrich-Wilhelms-Universität Bonn, Germany.
Naunyn Schmiedebergs Arch Pharmacol. 1998 Dec;358(6):623-7. doi: 10.1007/pl00005303.
We determined the affinities of five newly synthesized histamine H3-receptor antagonists in an H3-receptor binding assay and their potencies in a functional H3-receptor model. Furthermore, we determined their potencies in a histamine H2- and H1-receptor model. The compounds differ from histamine in that the ethylamine side chain is replaced by an aryl-substituted propyloxy chain and they differ from one another by varying substituents of the aryl rest. Iodoproxyfan, a highly potent and selective antagonist at H3 receptors, is structurally related to these five compounds. The specific binding of [3H]-Nalpha-methylhistamine to rat brain cortex membranes was monophasically displaced by each of the five compounds at pKi values ranging from 8.24 to 9.27. Inhibition by histamine of the electrically evoked tritium overflow from mouse brain cortex slices preincubated with [3H]noradrenaline was antagonized by all compounds and the concentration-response curve was shifted to the right with apparent pA2 values ranging from 7.78 to 9.39. The five compounds under study possess negligible potencies at histamine H2 and H1 receptors studied in the guinea-pig right atrium and ileum, respectively (pD'2 or pKp values < or = 5.2). The present paper shows that the five compounds under study possess high affinities and potencies at histamine H3 receptors, four out of the five compounds in this respect being equipotent with iodoproxyfan. Like iodoproxyfan, the five compounds show an at least 1000-fold selectivity for H3 as compared to H2 and H1 receptors.
我们在H3受体结合试验中测定了五种新合成的组胺H3受体拮抗剂的亲和力,并在功能性H3受体模型中测定了它们的效能。此外,我们还在组胺H2和H1受体模型中测定了它们的效能。这些化合物与组胺的不同之处在于乙胺侧链被芳基取代的丙氧基链所取代,并且它们彼此之间的区别在于芳基部分的取代基不同。碘普罗芬是一种高效且选择性的H3受体拮抗剂,在结构上与这五种化合物相关。[3H]-Nα-甲基组胺与大鼠脑皮质膜的特异性结合被这五种化合物中的每一种以单相方式取代,pKi值范围为8.24至9.27。组胺对预先用[3H]去甲肾上腺素孵育的小鼠脑皮质切片电诱发的氚外流的抑制作用被所有化合物拮抗,浓度-反应曲线向右移动,表观pA2值范围为7.78至9.39。所研究的这五种化合物在分别在豚鼠右心房和回肠中研究的组胺H2和H1受体上的效能可忽略不计(pD'2或pKp值≤5.2)。本文表明,所研究的这五种化合物在组胺H3受体上具有高亲和力和效能,其中五种化合物中的四种在这方面与碘普罗芬等效。与碘普罗芬一样,这五种化合物对H3受体的选择性比对H2和H1受体至少高1000倍。